This subproject is one of many research subprojects utilizing theresources provided by a Center grant funded by NIH/NCRR. The subproject andinvestigator (PI) may have received primary funding from another NIH source,and thus could be represented in other CRISP entries. The institution listed isfor the Center, which is not necessarily the institution for the investigator.We would like to incorporate aspects of our finite difference time-domain (FDTD) modeling of light scattering from cells into the Virtual Tissue Simulator. The FDTD method is an electromagnetic approach that enables accurate modeling of the complete light scattering properties of cells and other tissue components at the sub-micron scale. Although FDTD simulations are computationally demanding, it should be possible to create a database of scattering cross-sections and phase functions for a wide range of cellular structures and compositions that could be incorporated into macroscopic Monte Carlo methods. Such an approach would enable users to specify cellular and sub-cellular features of tissue components and then investigate how changes in the microscopic parameters translate to macroscopic optical changes.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biotechnology Resource Grants (P41)
Project #
2P41RR001192-29
Application #
7722607
Study Section
Special Emphasis Panel (ZRG1-SBIB-L (40))
Project Start
2008-04-15
Project End
2009-03-31
Budget Start
2008-04-15
Budget End
2009-03-31
Support Year
29
Fiscal Year
2008
Total Cost
$1,186
Indirect Cost
Name
University of California Irvine
Department
Physiology
Type
Schools of Medicine
DUNS #
046705849
City
Irvine
State
CA
Country
United States
Zip Code
92697
Verdel, Nina; Lentsch, Griffin; Balu, Mihaela et al. (2018) Noninvasive assessment of skin structure by combined photothermal radiometry and optical spectroscopy: coregistration with multiphoton microscopy. Appl Opt 57:D117-D122
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